US20080067167A1 - Heating cooker with cooling device and method of controlling the same - Google Patents
Heating cooker with cooling device and method of controlling the same Download PDFInfo
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- US20080067167A1 US20080067167A1 US11/826,657 US82665707A US2008067167A1 US 20080067167 A1 US20080067167 A1 US 20080067167A1 US 82665707 A US82665707 A US 82665707A US 2008067167 A1 US2008067167 A1 US 2008067167A1
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- Prior art keywords
- upper panel
- fan
- heating cooker
- fan housing
- cooker according
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C7/00—Stoves or ranges heated by electric energy
- F24C7/08—Arrangement or mounting of control or safety devices
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C15/00—Details
- F24C15/10—Tops, e.g. hot plates; Rings
- F24C15/101—Tops, e.g. hot plates; Rings provisions for circulation of air
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24C—DOMESTIC STOVES OR RANGES ; DETAILS OF DOMESTIC STOVES OR RANGES, OF GENERAL APPLICATION
- F24C7/00—Stoves or ranges heated by electric energy
- F24C7/04—Stoves or ranges heated by electric energy with heat radiated directly from the heating element
Definitions
- the present invention relates to a heating cooker and a method of controlling the same, and, more particularly, to a heating cooker which can forcibly cool a surface of an upper panel on which a cooking container is laid, and a method of controlling the same.
- heating cookers can be classified into gas cooking devices that heat food or cooking containers with gas combustion heat, and electric cooking devices that heat the food or the cooking containers with electric energy.
- electric cooking devices there are an electro-thermal cooker which directly heats the food or the cooking containers by use of heat generated from an electrothermal body, an induction heating cooker which heats the cooking container by use of eddy currents, a microwave oven which heats the food via penetration of microwaves generated from super high frequency oscillator into the food, etc.
- multi-functional cookers which can perform various cooking operations, such as roasting, frying, steaming, boiling, thawing, etc.
- Such multi-functional cookers include a gas oven, an electrical oven, and a combination oven which employs both gas and electricity.
- the multi-functional cooker has several cooking units to allow various cooking operations.
- the electrical microwave oven includes a cooking chamber to receive cooking containers or food and to heat the cooking containers and food evenly throughout, and an upper panel having a heater disposed thereon to heat the cooking container.
- a cook-top type heating cooker is disclosed as an example of the electrical microwave oven in U.S. Patent Publication No. 2003-0029858, published Feb. 13, 2003, and includes an upper panel and a temperature sensor positioned under the upper panel.
- Such a conventional heating cooker has a problem in that, since the upper panel remains heated for a long period of time after the cooking operation and the application of the power to the heating conductor are finished, there can be an accident caused by carelessness of a user.
- the conventional heating cooker is provided at an exterior with an alarm light such that, if the upper panel has a predetermined temperature or more even after the heater is turned off, the alarm light is lit, thus warning the user.
- a heating cooker which can forcibly cool a heated upper panel after a cooking operation to reduce or remove likelihood of an accident, such as burns caused by carelessness of a user, and a method of controlling the same.
- a heating cooker including: a body constituting an appearance of the heating cooker; an upper panel on which a cooking container may be laid; a heater positioned under the upper panel to heat the cooking container laid on the upper panel; and a surface cooling device to cool the upper panel.
- the surface cooling device may include a blast fan to forcibly blow air toward a surface of the upper panel, and a fan motor to operate the blast fan.
- the surface cooling device may further include a fan housing to receive the blast fan and the fan motor, the fan housing being liftably positioned at one side of the body to be raised above the upper panel and being formed with an air discharge port through which air blown by the blast fan is discharged toward the surface of the upper panel.
- the fan housing may be provided with a blow guide to guide the air blown by the blast fan to descend toward the surface of the upper panel.
- the heating cooker may further include a fan housing lifter to raise and lower the fan housing.
- the fan housing lifter may include a rack positioned at one side of the fan housing, a pinion engaged with the rack, and a motor to rotate the pinion.
- the heating cooker may further include an emission duct positioned at the other side of the body to guide the air discharged from the fan housing and flowing on the upper panel, the emission duct including an air inlet through which the air flowing on the upper panel enters the emission duct and an air outlet through which the air induced through the air inlet is emitted.
- the emission duct may be liftably attached to the body to allow the air inlet to be raised above the upper panel.
- the heating cooker may further include an emission duct lifter to raise and lower the emission duct.
- the emission duct lifter may include a rack positioned at one side of the emission duct, a pinion engaged with the rack, and a motor to rotate the pinion.
- a heating cooker including: a body constituting an appearance of the heating cooker; an upper panel on which a cooking container may be laid; a heater positioned under the upper panel to heat the cooking container laid on the upper panel; a surface cooling device to cool the upper panel; and a controller to control the heater and the surface cooling device.
- the heating cooker may further include a temperature sensor to detect a temperature of the upper panel, the controller controlling the surface cooling device in response to signals from the temperature sensor.
- a method of controlling a heating cooker including raising a fan housing having a blast fan and a fan motor received therein above an upper panel when a heater positioned under the upper panel is turned off after completion of a cooking operation; driving the fan motor to blow air toward the upper panel; and stopping the fan motor when the upper panel is cooled, followed by retracting the fan housing to its original position.
- the method may further include detecting a temperature of the upper panel, and the stopping of the fan motor followed by the retracting of the fan housing may be performed when the detected temperature is lower than a predetermined temperature.
- the stopping of the fan motor followed by the retracting of the fan housing may be performed with an elapse of a predetermined time after the driving of the fan motor.
- a heating cooker including an upper panel; at least one heater positioned beneath the upper panel; at least one temperature sensor detecting a temperature of a portion of the upper panel; and a liftably retractable surface cooling device cooling the upper panel.
- FIG. 1 is a perspective view of a heating cooker according to a first embodiment of the present invention
- FIG. 2 is a block diagram showing components of the heating cooker according to the embodiments of the present invention.
- FIG. 3 is a front view showing a major component of the heating cooker according to the first embodiment of the present invention.
- FIG. 4 is a side sectional view showing a major component of the heating cooker according to the embodiment of the present invention.
- FIG. 5 is a front view illustrating operation of the heating cooker according to the first embodiment of the present invention.
- FIG. 6 is a flow chart illustrating a method of controlling the heating cooker according to the first embodiment of the present invention.
- FIG. 7 is a schematic front view of a heating cooker according to a second embodiment of the present invention.
- FIG. 1 is a perspective view of a heating cooker according to a first embodiment of the invention
- FIG. 2 is a block diagram showing components of the heating cooker
- FIGS. 3 and 4 are a front view and a side sectional view showing a major component of the heating cooker
- FIG. 5 is a front view illustrating operation of the heating cooker
- FIG. 6 is a flow chart illustrating a method of controlling the heating cooker according to a first embodiment of the invention.
- the heating cooker 100 includes a body 110 constituting an appearance thereof, an upper panel 120 on the body 110 , a plurality of heaters 130 under the upper panel 120 , a surface cooling device 140 liftably positioned at both sides of the body 110 , and a controller 180 to control the heating cooker 100 .
- the body 110 is provided at a front side with a door 111 , and at one side of an upper portion with a control panel 112 .
- the body 110 has a cooking chamber (not shown) which is defined to receive a cooking container or food therein and is opened and closed by the door 111 .
- the control panel 112 may include various operation switches 113 for a user's manipulation, and a display window 114 to show the state of the heating cooker 100 .
- An installation space is defined between the cooking chamber and either side of the body 110 .
- the upper panel 120 may be made of a ceramic material.
- a plurality of surface heating parts 121 on which the cooking container can be laid.
- Each of the heaters 130 is located under a corresponding surface heating part 121 to heat the surface heating part 121 .
- the corresponding heater 130 may be operated to heat the cooking container and perform the cooking operation.
- the plural heaters 130 are positioned under the respective surface heating parts 121 and heat the corresponding surface heating parts 121 .
- the heaters 130 may be radiant heaters, halogen heaters, or any other type of heating device.
- the surface cooling device 140 serves to forcibly cool the upper panel 120 heated by any of the heaters 130 after completing the cooking operation.
- the surface cooling device 140 includes a fan housing 151 and an emission duct 161 liftably positioned at either side of the body 110 to protrude above the upper panel 120 .
- the fan housing 151 has an air intake port 152 through which air is sucked into the fan housing 151 , and an air discharge port 153 (shown in FIG. 3 ) through which the air is discharged from the fan housing 151 .
- the air intake port 152 is formed at either side of the fan housing 151 as shown in FIG. 1
- the air discharge port 153 is formed at an upper front side of the fan housing 151 as shown in FIGS. 3 and 4 .
- a blowing chamber 154 is defined in the fan housing 151 , and is installed therein with a blast fan 155 to forcibly blow air and a fan motor 156 to drive the blast fan 155 .
- the fan housing 151 is provided at an inside upper portion with a blow guide 157 to guide air blown by the blast fan 155 toward the air discharge port 153 .
- the blow guide 157 is bent to have gentle slopes, and disposed longitudinally along the air discharge port 153 .
- the blow guide 157 serves to change a flow direction of the air blown from the blowing chamber 154 and to guide the air discharged through the air discharge port 153 to be directed downward.
- the air discharge port 153 is directed to the surface of the upper panel 120 . Then, as the blast fan 155 is actuated, air is sucked into the blowing chamber 154 through the air intake port 152 , flows toward the blow guide 157 from the blowing chamber 154 , and is then discharged toward the surface of the upper panel 120 through the air discharge port 153 along the blow guide 157 .
- the fan housing lifter 171 raises and lowers the fan housing 151 above and below the upper panel 120 .
- the fan housing lifter 171 includes a rack 172 positioned at a rear of the fan housing 151 , a pinion 173 engaging with the rack 172 , and a first motor 174 to drive the pinion 173 .
- the rack 172 is forced upward or downward to raise or lower the fan housing 151 .
- the first motor 174 is controlled by the controller 180 .
- the emission duct 161 is liftably positioned opposite the fan housing 151 with the upper panel 120 disposed therebetween.
- the emission duct 161 has an air inlet 162 through which air discharged from the fan housing 151 and then flowing past the surface of the upper panel 120 is induced into the emission duct 161 , and an air outlet 163 through which the air induced into the emission duct 161 is emitted to the outside.
- the air inlet 162 has an elongated shape formed at an upper portion of the emission duct 161 to face the air discharge port 153 of the fan housing 151 , and the air outlet 163 is positioned at either side of the emission duct 161 to allow the air to be emitted in front and rear directions of the body 110 .
- the emission duct 161 is raised above the upper panel 120 along with the fan housing 151 , and then guides the air, which is discharged from the fan housing 151 and then flows past the surface of the upper panel 120 , into the body 110 .
- the air outlet 163 may be formed at other locations, such as lower portions of the emission duct 161 , rather than either side of the emission duct 161 , to emit the air towards other portions within the body 110 .
- an emission duct lifter 175 includes a rack 176 positioned at the rear of the emission duct 161 , a pinion 177 engaging with the rack 176 , and a second motor 178 to drive the pinion 177 .
- the rack 176 is forced upward or downward to raise or lower the emission duct 161 .
- the second motor 178 is controlled by the controller 180 .
- the controller 180 controls the first and second motors 174 and 178 , the fan motor 156 , the heater 130 , and the display window 114 in response to signals from the operation switches 113 and temperature sensors 190 .
- the temperature sensors 190 are positioned proximate the respective heaters 130 under the upper panel 120 to detect the temperature of the upper panel 120 heated by the heaters 130 .
- the surface cooling device 140 can be manually or automatically actuated.
- the surface cooling device 140 may be actuated by manipulating a separated actuation switch able to be manipulated by a user, or may be automatically actuated by the controller 180 after the cooking operation. Cessation of the cooling by the surface cooling device 140 is automatically performed in response to a detection signal via the temperature sensor 190 when the temperature of the upper panel 120 is lowered to or less than a predetermined degree.
- the fan housing lifter 171 and the emission duct lifter 175 that raise and lower the fan housing 151 and the emission duct 161 commonly employ various linear movement devices, such as cams, links, ball screws, worm gears, etc., as well as using the rack and pinion.
- a corresponding heater 130 With a cooking container laid on the surface heating part 121 of the upper panel 120 , a corresponding heater 130 (see FIG. 1 ) is turned on (S 10 ) to heat the surface heating part 121 , performing a cooking operation.
- the controller 180 determines whether or not the heater is turned off (S 20 ). If it is determined that the heater is not turned off, the routine returns to S 20 until the heater is determined to be turned off. If it is determined that the heater 130 is turned off by completion of the cooking operation, the controller 180 actuates the first and second motors 174 and 178 for a predetermined period of time to raise the fan housing 151 and the emission duct 161 above the upper panel 120 (S 30 ).
- the air discharge port 153 of the fan housing 151 and the air inlet 162 of the emission duct 161 are positioned above the surface of the upper panel 120 and face each other with the upper panel 120 disposed therebetween.
- the controller 180 drives the fan motor 156 (see FIG. 3 ) to rotate the blast fan 155 (S 40 ).
- the blast fan 155 As the blast fan 155 is rotated, air flows along the blow guide 157 from the blowing chamber 154 , and is discharged downwardly through the air discharge port 153 .
- the air After being discharged through the air discharge port 153 , the air flows past the surface of the upper panel 120 toward the emission duct 161 while cooling the upper panel 120 heated by the heater 130 . Then, the air is induced into the emission duct 161 through the air inlet 162 of the emission duct 161 , and discharged to the outside through the air outlet 163 thereof.
- the controller 180 While the air discharged from the fan housing 151 cools the upper panel 120 , the controller 180 detects a temperature T of the upper panel 120 by use of an associated temperature sensor 190 (S 50 ), and determines whether the temperature T is lower than a predetermined temperature Ts (S 60 ). Here, it is desirable that the predetermined temperature be sufficiently low to prevent a user from being burned. If the detected temperature T is not lower than the predetermined temperature Ts, the routine returns to S 60 until the temperature T is detected to be lower than the predetermined temperature Ts.
- the controller 180 stops the fan motor 156 (S 70 ), and actuates the first and second motors 174 and 178 for a predetermined period of time to descend the fan housing 151 and the emission duct 161 to their original positions (S 80 ).
- position detection sensors may be respectively positioned near the fan housing 151 and the emission duct 161 to detect raised positions of the fan housing 151 and the emission duct 161 .
- the controller 180 controls the first and second motors 174 and 178 in response to signals from the position detection sensors.
- the controller 180 may return the fan housing 151 and the emission duct 161 to their original positions after raising the fan housing 151 and the emission duct 161 and operating the fan motor 156 for a predetermined period of time.
- the operating time of the fan motor 156 may be determined through experiment so as to allow the upper panel 120 to be sufficiently cooled by the blown air.
- a heating cooker 200 according to a second embodiment of the invention is schematically shown in a front view.
- the heating cooker 200 according to this embodiment has a similar configuration to that of the above embodiment except that a surface cooling device 240 is constituted without using the emission duct.
- the heating cooker 200 includes a body 210 , an upper panel 120 (see FIG. 1 ), a plurality of heaters 130 (see FIG. 1 ), a surface cooling device 240 , a plurality of temperature sensors 190 (see FIG. 1 ), and a controller 180 (see FIG. 2 ).
- the surface cooling device 240 includes a fan housing 251 liftably positioned at one side of the body 210 , a blast fan 155 (see FIG. 3 ) and a fan motor 156 (see FIG. 3 ) positioned in the fan housing 251 , and a fan housing lifter 271 to raise or lower the fan housing 251 .
- the fan housing 271 includes a rack 272 , a pinion 273 , and a motor 274 .
- the fan housing 251 When the cooking operation is finished, the fan housing 251 is raised above the upper panel 120 , and blows air over the surface of the upper panel 120 . Then, the air flows past the surface of the upper panel 120 toward an opposite side of the fan housing 251 while cooling the upper panel 120 .
- the fan housing 151 is raised above the upper panel 120 before the upper panel is cooled to a suitable temperature, making the user more cautious about the heated upper panel 120 .
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- Electric Stoves And Ranges (AREA)
Abstract
Provided is a heating cooker which includes a body constituting an appearance thereof, an upper panel on which a cooking container is laid, a heater positioned under the upper panel to heat the cooking container laid on the upper panel, a fan housing liftably positioned at one side of the body to be raised above the upper panel and having an air intake port and an air discharge port, a blast fan and a fan motor positioned in the fan housing to forcibly blow air toward a surface of the upper panel, a fan housing lifter to raise and lower the fan housing, a temperature sensor to detect the temperature of the upper panel, and a controller to control the heater, the fan motor, and the fan housing lifter. The upper panel heated by the heater can be forcibly cooled by air from the fan housing.
Description
- This application claims the benefit under 35 U.S.C. § 119 of Korean Patent Application No. 2006-0090296, filed on Sep. 18, 2006 in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.
- 1. Field
- The present invention relates to a heating cooker and a method of controlling the same, and, more particularly, to a heating cooker which can forcibly cool a surface of an upper panel on which a cooking container is laid, and a method of controlling the same.
- 2. Description of the Related Art
- Generally, heating cookers can be classified into gas cooking devices that heat food or cooking containers with gas combustion heat, and electric cooking devices that heat the food or the cooking containers with electric energy. For the electric cooking devices, there are an electro-thermal cooker which directly heats the food or the cooking containers by use of heat generated from an electrothermal body, an induction heating cooker which heats the cooking container by use of eddy currents, a microwave oven which heats the food via penetration of microwaves generated from super high frequency oscillator into the food, etc.
- Recently, multi-functional cookers have been widely supplied, which can perform various cooking operations, such as roasting, frying, steaming, boiling, thawing, etc. Such multi-functional cookers include a gas oven, an electrical oven, and a combination oven which employs both gas and electricity.
- The multi-functional cooker has several cooking units to allow various cooking operations. For example, the electrical microwave oven includes a cooking chamber to receive cooking containers or food and to heat the cooking containers and food evenly throughout, and an upper panel having a heater disposed thereon to heat the cooking container.
- A cook-top type heating cooker is disclosed as an example of the electrical microwave oven in U.S. Patent Publication No. 2003-0029858, published Feb. 13, 2003, and includes an upper panel and a temperature sensor positioned under the upper panel.
- In the heating cooker of the related art, a heater is positioned near the temperature sensor under an upper panel made from a ceramic material. The heater includes a heating conductor which is supplied with power to generate heat, and the temperature sensor detects the heating temperature in preparation for control of the power supplied to the heating conductor. When the heating conductor generates heat through application of power thereto, the cooking container laid on the surface of the upper panel is heated to perform the cooking operation.
- Such a conventional heating cooker has a problem in that, since the upper panel remains heated for a long period of time after the cooking operation and the application of the power to the heating conductor are finished, there can be an accident caused by carelessness of a user.
- In order to prevent such a problem, the conventional heating cooker is provided at an exterior with an alarm light such that, if the upper panel has a predetermined temperature or more even after the heater is turned off, the alarm light is lit, thus warning the user.
- However, since the upper panel of the conventional heating cooker remains still heated for a significantly long period of time after the cooking operation, there is a high likelihood of an accident, such as serious burns caused by the carelessness of the user, even with such an alarm light.
- Therefore, it is an aspect to provide a heating cooker, which can forcibly cool a heated upper panel after a cooking operation to reduce or remove likelihood of an accident, such as burns caused by carelessness of a user, and a method of controlling the same.
- Additional aspects and/or advantages of the embodiments will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the embodiments.
- In accordance with one aspect, a heating cooker is provided, including: a body constituting an appearance of the heating cooker; an upper panel on which a cooking container may be laid; a heater positioned under the upper panel to heat the cooking container laid on the upper panel; and a surface cooling device to cool the upper panel.
- The surface cooling device may include a blast fan to forcibly blow air toward a surface of the upper panel, and a fan motor to operate the blast fan.
- The surface cooling device may further include a fan housing to receive the blast fan and the fan motor, the fan housing being liftably positioned at one side of the body to be raised above the upper panel and being formed with an air discharge port through which air blown by the blast fan is discharged toward the surface of the upper panel.
- The fan housing may be provided with a blow guide to guide the air blown by the blast fan to descend toward the surface of the upper panel.
- The heating cooker may further include a fan housing lifter to raise and lower the fan housing.
- The fan housing lifter may include a rack positioned at one side of the fan housing, a pinion engaged with the rack, and a motor to rotate the pinion.
- The heating cooker may further include an emission duct positioned at the other side of the body to guide the air discharged from the fan housing and flowing on the upper panel, the emission duct including an air inlet through which the air flowing on the upper panel enters the emission duct and an air outlet through which the air induced through the air inlet is emitted.
- The emission duct may be liftably attached to the body to allow the air inlet to be raised above the upper panel.
- The heating cooker may further include an emission duct lifter to raise and lower the emission duct.
- The emission duct lifter may include a rack positioned at one side of the emission duct, a pinion engaged with the rack, and a motor to rotate the pinion.
- The foregoing and/or other aspects are achieved by providing a heating cooker, including: a body constituting an appearance of the heating cooker; an upper panel on which a cooking container may be laid; a heater positioned under the upper panel to heat the cooking container laid on the upper panel; a surface cooling device to cool the upper panel; and a controller to control the heater and the surface cooling device.
- The heating cooker may further include a temperature sensor to detect a temperature of the upper panel, the controller controlling the surface cooling device in response to signals from the temperature sensor.
- The foregoing and/or other aspects of the present invention are achieved by providing a method of controlling a heating cooker, including raising a fan housing having a blast fan and a fan motor received therein above an upper panel when a heater positioned under the upper panel is turned off after completion of a cooking operation; driving the fan motor to blow air toward the upper panel; and stopping the fan motor when the upper panel is cooled, followed by retracting the fan housing to its original position.
- The method may further include detecting a temperature of the upper panel, and the stopping of the fan motor followed by the retracting of the fan housing may be performed when the detected temperature is lower than a predetermined temperature.
- The stopping of the fan motor followed by the retracting of the fan housing may be performed with an elapse of a predetermined time after the driving of the fan motor.
- The foregoing and/or other aspects are achieved by providing a heating cooker including an upper panel; at least one heater positioned beneath the upper panel; at least one temperature sensor detecting a temperature of a portion of the upper panel; and a liftably retractable surface cooling device cooling the upper panel.
- These and/or other aspects and advantages will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, of which:
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FIG. 1 is a perspective view of a heating cooker according to a first embodiment of the present invention; -
FIG. 2 is a block diagram showing components of the heating cooker according to the embodiments of the present invention; -
FIG. 3 is a front view showing a major component of the heating cooker according to the first embodiment of the present invention; -
FIG. 4 is a side sectional view showing a major component of the heating cooker according to the embodiment of the present invention; -
FIG. 5 is a front view illustrating operation of the heating cooker according to the first embodiment of the present invention; -
FIG. 6 is a flow chart illustrating a method of controlling the heating cooker according to the first embodiment of the present invention; and -
FIG. 7 is a schematic front view of a heating cooker according to a second embodiment of the present invention. - Reference will now be made in detail to the embodiments, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the like elements throughout the drawings. The embodiments are described below to explain the invention by referring to the figures.
-
FIG. 1 is a perspective view of a heating cooker according to a first embodiment of the invention,FIG. 2 is a block diagram showing components of the heating cooker,FIGS. 3 and 4 are a front view and a side sectional view showing a major component of the heating cooker,FIG. 5 is a front view illustrating operation of the heating cooker, andFIG. 6 is a flow chart illustrating a method of controlling the heating cooker according to a first embodiment of the invention. - Referring to
FIGS. 1 and 2 , theheating cooker 100 according to a first embodiment includes abody 110 constituting an appearance thereof, anupper panel 120 on thebody 110, a plurality ofheaters 130 under theupper panel 120, asurface cooling device 140 liftably positioned at both sides of thebody 110, and acontroller 180 to control theheating cooker 100. - The
body 110 is provided at a front side with adoor 111, and at one side of an upper portion with acontrol panel 112. Thebody 110 has a cooking chamber (not shown) which is defined to receive a cooking container or food therein and is opened and closed by thedoor 111. Thecontrol panel 112 may includevarious operation switches 113 for a user's manipulation, and adisplay window 114 to show the state of theheating cooker 100. An installation space is defined between the cooking chamber and either side of thebody 110. - The
upper panel 120 may be made of a ceramic material. Provided on the surface of theupper panel 120 is a plurality ofsurface heating parts 121 on which the cooking container can be laid. Each of theheaters 130 is located under a correspondingsurface heating part 121 to heat thesurface heating part 121. Thus, with the cooking container seated on thesurface heating part 121, thecorresponding heater 130 may be operated to heat the cooking container and perform the cooking operation. - The
plural heaters 130 are positioned under the respectivesurface heating parts 121 and heat the correspondingsurface heating parts 121. Theheaters 130 may be radiant heaters, halogen heaters, or any other type of heating device. - The
surface cooling device 140 serves to forcibly cool theupper panel 120 heated by any of theheaters 130 after completing the cooking operation. Thesurface cooling device 140 includes afan housing 151 and anemission duct 161 liftably positioned at either side of thebody 110 to protrude above theupper panel 120. - The
fan housing 151 has anair intake port 152 through which air is sucked into thefan housing 151, and an air discharge port 153 (shown inFIG. 3 ) through which the air is discharged from thefan housing 151. Theair intake port 152 is formed at either side of thefan housing 151 as shown inFIG. 1 , and theair discharge port 153 is formed at an upper front side of thefan housing 151 as shown inFIGS. 3 and 4 . A blowingchamber 154 is defined in thefan housing 151, and is installed therein with ablast fan 155 to forcibly blow air and afan motor 156 to drive theblast fan 155. Thefan housing 151 is provided at an inside upper portion with ablow guide 157 to guide air blown by theblast fan 155 toward theair discharge port 153. Theblow guide 157 is bent to have gentle slopes, and disposed longitudinally along theair discharge port 153. Theblow guide 157 serves to change a flow direction of the air blown from the blowingchamber 154 and to guide the air discharged through theair discharge port 153 to be directed downward. - When the
fan housing 151 is raised above theupper panel 120, theair discharge port 153 is directed to the surface of theupper panel 120. Then, as theblast fan 155 is actuated, air is sucked into the blowingchamber 154 through theair intake port 152, flows toward theblow guide 157 from the blowingchamber 154, and is then discharged toward the surface of theupper panel 120 through theair discharge port 153 along theblow guide 157. - The
fan housing lifter 171 raises and lowers thefan housing 151 above and below theupper panel 120. Referring toFIG. 1 , thefan housing lifter 171 includes arack 172 positioned at a rear of thefan housing 151, apinion 173 engaging with therack 172, and afirst motor 174 to drive thepinion 173. When thepinion 173 is rotated in the clockwise or counterclockwise direction through operation of thefirst motor 174, therack 172 is forced upward or downward to raise or lower thefan housing 151. Thefirst motor 174 is controlled by thecontroller 180. - As shown in
FIG. 1 , theemission duct 161 is liftably positioned opposite thefan housing 151 with theupper panel 120 disposed therebetween. Theemission duct 161 has anair inlet 162 through which air discharged from thefan housing 151 and then flowing past the surface of theupper panel 120 is induced into theemission duct 161, and anair outlet 163 through which the air induced into theemission duct 161 is emitted to the outside. Theair inlet 162 has an elongated shape formed at an upper portion of theemission duct 161 to face theair discharge port 153 of thefan housing 151, and theair outlet 163 is positioned at either side of theemission duct 161 to allow the air to be emitted in front and rear directions of thebody 110. - With such a configuration as described above, the
emission duct 161 is raised above theupper panel 120 along with thefan housing 151, and then guides the air, which is discharged from thefan housing 151 and then flows past the surface of theupper panel 120, into thebody 110. In this embodiment, theair outlet 163 may be formed at other locations, such as lower portions of theemission duct 161, rather than either side of theemission duct 161, to emit the air towards other portions within thebody 110. - Turning now to
FIG. 5 , as in thefan housing lifter 171, anemission duct lifter 175 includes arack 176 positioned at the rear of theemission duct 161, apinion 177 engaging with therack 176, and asecond motor 178 to drive thepinion 177. When thepinion 177 is rotated in the clockwise or counterclockwise direction through operation of thesecond motor 178, therack 176 is forced upward or downward to raise or lower theemission duct 161. Thesecond motor 178 is controlled by thecontroller 180. - Referring to
FIG. 2 , thecontroller 180 controls the first andsecond motors fan motor 156, theheater 130, and thedisplay window 114 in response to signals from the operation switches 113 andtemperature sensors 190. Thetemperature sensors 190 are positioned proximate therespective heaters 130 under theupper panel 120 to detect the temperature of theupper panel 120 heated by theheaters 130. - For the
heating cooker 100 of this embodiment, thesurface cooling device 140 can be manually or automatically actuated. In other words, thesurface cooling device 140 may be actuated by manipulating a separated actuation switch able to be manipulated by a user, or may be automatically actuated by thecontroller 180 after the cooking operation. Cessation of the cooling by thesurface cooling device 140 is automatically performed in response to a detection signal via thetemperature sensor 190 when the temperature of theupper panel 120 is lowered to or less than a predetermined degree. - Meanwhile, the
fan housing lifter 171 and theemission duct lifter 175 that raise and lower thefan housing 151 and theemission duct 161 commonly employ various linear movement devices, such as cams, links, ball screws, worm gears, etc., as well as using the rack and pinion. - Operation and control method of the
heating cooker 100 according to the first embodiment of the invention will hereinafter be described with reference toFIGS. 5 and 6 . - With a cooking container laid on the
surface heating part 121 of theupper panel 120, a corresponding heater 130 (seeFIG. 1 ) is turned on (S10) to heat thesurface heating part 121, performing a cooking operation. With an elapse of time after theheater 130 is turned on, the controller 180 (seeFIG. 2 ) determines whether or not the heater is turned off (S20). If it is determined that the heater is not turned off, the routine returns to S20 until the heater is determined to be turned off. If it is determined that theheater 130 is turned off by completion of the cooking operation, thecontroller 180 actuates the first andsecond motors fan housing 151 and theemission duct 161 above the upper panel 120 (S30). Here, theair discharge port 153 of thefan housing 151 and theair inlet 162 of theemission duct 161 are positioned above the surface of theupper panel 120 and face each other with theupper panel 120 disposed therebetween. Then, thecontroller 180 drives the fan motor 156 (seeFIG. 3 ) to rotate the blast fan 155 (S40). As theblast fan 155 is rotated, air flows along theblow guide 157 from the blowingchamber 154, and is discharged downwardly through theair discharge port 153. - After being discharged through the
air discharge port 153, the air flows past the surface of theupper panel 120 toward theemission duct 161 while cooling theupper panel 120 heated by theheater 130. Then, the air is induced into theemission duct 161 through theair inlet 162 of theemission duct 161, and discharged to the outside through theair outlet 163 thereof. - While the air discharged from the
fan housing 151 cools theupper panel 120, thecontroller 180 detects a temperature T of theupper panel 120 by use of an associated temperature sensor 190 (S50), and determines whether the temperature T is lower than a predetermined temperature Ts (S60). Here, it is desirable that the predetermined temperature be sufficiently low to prevent a user from being burned. If the detected temperature T is not lower than the predetermined temperature Ts, the routine returns to S60 until the temperature T is detected to be lower than the predetermined temperature Ts. - When the detected temperature T is lower than the predetermined temperature Ts due to sufficient cooling of the
upper panel 120, thecontroller 180 stops the fan motor 156 (S70), and actuates the first andsecond motors fan housing 151 and theemission duct 161 to their original positions (S80). - According to the present embodiment, position detection sensors may be respectively positioned near the
fan housing 151 and theemission duct 161 to detect raised positions of thefan housing 151 and theemission duct 161. In this case, thecontroller 180 controls the first andsecond motors - The
controller 180 may return thefan housing 151 and theemission duct 161 to their original positions after raising thefan housing 151 and theemission duct 161 and operating thefan motor 156 for a predetermined period of time. In this case, the operating time of thefan motor 156 may be determined through experiment so as to allow theupper panel 120 to be sufficiently cooled by the blown air. - Referring to
FIG. 7 , aheating cooker 200 according to a second embodiment of the invention is schematically shown in a front view. - The
heating cooker 200 according to this embodiment has a similar configuration to that of the above embodiment except that asurface cooling device 240 is constituted without using the emission duct. - Specifically the
heating cooker 200 according to this embodiment includes abody 210, an upper panel 120 (seeFIG. 1 ), a plurality of heaters 130 (seeFIG. 1 ), asurface cooling device 240, a plurality of temperature sensors 190 (seeFIG. 1 ), and a controller 180 (see FIG. 2). Thesurface cooling device 240 includes afan housing 251 liftably positioned at one side of thebody 210, a blast fan 155 (seeFIG. 3 ) and a fan motor 156 (seeFIG. 3 ) positioned in thefan housing 251, and afan housing lifter 271 to raise or lower thefan housing 251. Thefan housing 271 includes arack 272, apinion 273, and amotor 274. - When the cooking operation is finished, the
fan housing 251 is raised above theupper panel 120, and blows air over the surface of theupper panel 120. Then, the air flows past the surface of theupper panel 120 toward an opposite side of thefan housing 251 while cooling theupper panel 120. - As apparent from the above description, for the heating cooker according to the embodiments, since air is forced to flow past the surface of the
upper panel 120 heated by theheater 130 to cool theupper panel 120 after completion of cooking, it is possible to reduce or remove the likelihood of an accident, such as burns, caused by carelessness of a user. - In addition, for the heating cooker according to the embodiments, the
fan housing 151 is raised above theupper panel 120 before the upper panel is cooled to a suitable temperature, making the user more cautious about the heatedupper panel 120. - Although a few embodiments have been shown and described, it would be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.
Claims (20)
1. A heating cooker, comprising:
a body constituting an appearance of the heating cooker;
an upper panel on which a cooking container may be laid;
at least one heater positioned under the upper panel to heat the cooking container laid on the upper panel; and
a surface cooling device to cool the upper panel.
2. The heating cooker according to claim 1 , wherein the surface cooling device comprises a blast fan to forcibly blow air toward a surface of the upper panel, and a fan motor to operate the blast fan.
3. The heating cooker according to claim 2 , wherein the surface cooling device comprises a fan housing to receive the blast fan and the fan motor, the fan housing being liftably positioned at one side of the body to be raised above the upper panel and being formed with an air discharge port through which air blown by the blast fan is discharged toward the surface of the upper panel.
4. The heating cooker according to claim 3 , wherein the fan housing is provided with a blow guide to guide the air blown by the blast fan to descend toward the surface of the upper panel.
5. The heating cooker according to claim 3 , further comprising:
a fan housing lifter to raise and lower the fan housing.
6. The heating cooker according to claim 5 , wherein the fan housing lifter comprises a rack positioned at one side of the fan housing, a pinion engaged with the rack, and a first motor to rotate the pinion.
7. The heating cooker according to claim 3 , further comprising: an emission duct positioned at the other side of the body to guide the air discharged from the fan housing and flowing on the upper panel, the emission duct comprising an air inlet through which the air flowing on the upper panel enters the emission duct, and an air outlet through which the air induced through the air inlet is emitted.
8. The heating cooker according to claim 7 , wherein the emission duct is liftably attached to the body to allow the air inlet to be raised above the upper panel.
9. The heating cooker according to claim 8 , further comprising:
an emission duct lifter to raise and lower the emission duct.
10. The heating cooker according to claim 9 , wherein the emission duct lifter comprises a rack positioned at one side of the emission duct, a pinion engaged with the rack, and a second motor to rotate the pinion.
11. The heating cooker according to claim 1 , further comprising: a controller to control the heater and the surface cooling device.
12. The heating cooker according to claim 11 , further comprising: a temperature sensor to detect a temperature of the upper panel, wherein the controller controls the surface cooling device in response to signals from the temperature sensor.
13. A method of controlling a heating cooker, comprising:
raising a fan housing, from an original position of the fan housing, having a blast fan and a fan motor received therein above an upper panel when a heater positioned under the upper panel is turned off after completion of a cooking operation;
driving the fan motor to blow air toward the upper panel; and
stopping the fan motor when the upper panel is cooled, followed by retracting the fan housing to the original position of the fan housing.
14. The method according to claim 13 , further comprising:
detecting a temperature of the upper panel, wherein the stopping of the fan motor followed by the retracting of the fan housing is performed when the detected temperature is lower than a predetermined temperature.
15. The method according to claim 13 , wherein the stopping of the fan motor followed by the retracting of the fan housing is performed with an elapse of a predetermined time after the driving of the fan motor.
16. A heating cooker, comprising:
an upper panel;
at least one heater positioned beneath the upper panel;
at least one temperature sensor detecting a temperature of a portion of the upper panel; and
a liftably retractable surface cooling device cooling the upper panel.
17. The heating cooker according to claim 16 , wherein the surface cooling device is lifted to cool the upper panel after the heater has been turned on and then turned off.
18. The heating cooker according to claim 17 , wherein the surface cooling device includes a fan, the fan being turned on to cool the upper panel after the surface cooling device is lifted.
19. The heating cooker according to claim 18 , wherein the fan is turned off after the temperature detected by the temperature sensor falls below a predetermined temperature.
20. The heating cooker according to claim 19 , wherein the surface cooling device is retracted to an original position after the fan is turned off.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
KR2006-90296 | 2006-09-18 | ||
KR1020060090296A KR20080025603A (en) | 2006-09-18 | 2006-09-18 | Heating cooker and method for controlling the same |
Publications (1)
Publication Number | Publication Date |
---|---|
US20080067167A1 true US20080067167A1 (en) | 2008-03-20 |
Family
ID=38705152
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
US11/826,657 Abandoned US20080067167A1 (en) | 2006-09-18 | 2007-07-17 | Heating cooker with cooling device and method of controlling the same |
Country Status (4)
Country | Link |
---|---|
US (1) | US20080067167A1 (en) |
EP (1) | EP1906097A2 (en) |
KR (1) | KR20080025603A (en) |
CN (1) | CN101147653A (en) |
Cited By (5)
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US20110320062A1 (en) * | 2010-06-28 | 2011-12-29 | Hon Hai Precision Industry Co., Ltd. | Computing device and method for controlling temperature thereof |
CN104825049A (en) * | 2015-05-18 | 2015-08-12 | 广东美的厨房电器制造有限公司 | Electric steaming oven |
US9578694B2 (en) | 2014-06-20 | 2017-02-21 | Haier U.S. Appliance Solutions, Inc. | Ventilation systems and methods for operating the same |
US10190782B2 (en) | 2015-01-05 | 2019-01-29 | Samsung Electronics Co., Ltd. | Gas oven |
US11193674B2 (en) * | 2019-08-07 | 2021-12-07 | ANH Innovation, LLC | Mobile recirculation grill with plenum and diffuser |
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CN101558959B (en) * | 2009-05-27 | 2010-11-17 | 陈俊喜 | Full-automatic breakfast machine |
DE102012200384B4 (en) * | 2011-12-29 | 2018-03-15 | Continental Automotive Gmbh | On a carrier arranged circuit arrangement with temperature monitoring and method for detecting an overtemperature |
CN103371739B (en) * | 2012-04-13 | 2016-09-21 | 美的集团股份有限公司 | A kind of baking machine |
EP3157399B1 (en) * | 2014-06-23 | 2020-05-06 | Ember Technologies, Inc. | Heated or cooled dishware and drinkware |
CN104391527B (en) * | 2014-11-10 | 2017-02-15 | 广东美的厨房电器制造有限公司 | Cooling assembly and electrical appliance |
KR101642098B1 (en) * | 2014-12-23 | 2016-07-22 | 주식회사 엔씨엠 | Apparatus for managing remaining warmth of electric type range |
CN108652418B (en) * | 2015-06-29 | 2020-09-22 | 雷歌辉 | Automatic cooking equipment |
EP3490337A1 (en) * | 2017-11-22 | 2019-05-29 | Vestel Elektronik Sanayi ve Ticaret A.S. | A heating appliance |
CN109945253A (en) * | 2017-12-20 | 2019-06-28 | 华帝股份有限公司 | Heat dissipation mechanism for electromagnetic oven panel and electromagnetic oven with heat dissipation mechanism |
KR102580371B1 (en) * | 2017-12-29 | 2023-09-19 | 코웨이 주식회사 | Electric cooking device comprising adjustable collector |
KR102025277B1 (en) * | 2018-04-13 | 2019-09-25 | 이선재 | Instant steam generator for cooking |
US10948193B2 (en) * | 2018-08-06 | 2021-03-16 | Haier Us Appliance Solutions, Inc. | Fan assembly for an induction cooking appliance |
EP4269878A4 (en) * | 2021-05-11 | 2024-07-17 | Samsung Electronics Co Ltd | Cooking appliance and control method thereof |
WO2022239949A1 (en) * | 2021-05-11 | 2022-11-17 | 삼성전자주식회사 | Cooking appliance and control method therefor |
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US20110320062A1 (en) * | 2010-06-28 | 2011-12-29 | Hon Hai Precision Industry Co., Ltd. | Computing device and method for controlling temperature thereof |
US8751057B2 (en) * | 2010-06-28 | 2014-06-10 | Hon Hai Precision Industry Co., Ltd. | Computing device and method for controlling temperature thereof |
US9578694B2 (en) | 2014-06-20 | 2017-02-21 | Haier U.S. Appliance Solutions, Inc. | Ventilation systems and methods for operating the same |
US10190782B2 (en) | 2015-01-05 | 2019-01-29 | Samsung Electronics Co., Ltd. | Gas oven |
CN104825049A (en) * | 2015-05-18 | 2015-08-12 | 广东美的厨房电器制造有限公司 | Electric steaming oven |
US11193674B2 (en) * | 2019-08-07 | 2021-12-07 | ANH Innovation, LLC | Mobile recirculation grill with plenum and diffuser |
Also Published As
Publication number | Publication date |
---|---|
CN101147653A (en) | 2008-03-26 |
EP1906097A2 (en) | 2008-04-02 |
KR20080025603A (en) | 2008-03-21 |
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AS | Assignment |
Owner name: SAMSUNG ELECTRONICS CO., LTD., KOREA, REPUBLIC OF Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:SUNG, HAN JUN;HAN, DAE SUNG;KWON, YONG HYUN;AND OTHERS;REEL/FRAME:019599/0716;SIGNING DATES FROM 20070703 TO 20070709 |
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STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |